Sigamani Ashokkumar, Nambiraj Arunai
Department of Physics, School of Advanced Sciences, VIT University, Vellore 632014, India.
Rep Pract Oncol Radiother. 2017 May-Jun;22(3):243-250. doi: 10.1016/j.rpor.2016.12.003. Epub 2017 Apr 25.
The purpose of this study is to determine the central-axis dose in the buildup region and the surface dose delivered by a 6 MV flattened photon beam (6 MV-FB) and a higher energy unflattened (7 MV-FFF) therapeutic photon beam for different-sized square fields with open fields and modifying filters.
The beams are produced by a Siemens Artiste linear accelerator with a NACP-02 ionization chamber and the dose is measured by using GafChromic film and two different, commonly used, dosimeters: a p-type photon semiconductor dosimeter (PFD) and a cylindrical ionization chamber (CC13).
The results indicate that the surface dose increases linearly with FS for both open and wedged fields for the 6 MV-FB and 7 MV-FFF beams. The surface dose delivered by the 7 MV-UFB beam is consistent with that delivered by the 6 MV-FB beam for field sizes up to 10 cm × 10 cm, after which the surface dose decreases. The buildup dose for the 7 MV-UFB beam is slightly less than that for the 6 MV-FB beam for field sizes ranging from 5 cm × 5 cm to 15 cm × 15 cm. For both the 6 MV-FB and 7 MV-FFF beams, the measured surface dose clearly increases with increasing field size, regardless of the detector used in the measurement. The surface dose measured with the PFD dosimeter and the NACP-02 and CC13 chambers differ significantly from the results obtained when using GafChromic film. The 7 MV-FFF beam results in a slightly smaller surface dose in the buildup region compared with the 6 MV-FB beam.
The surface dose delivered by the higher energy 7 MV-FFF beam is less than that delivered by the energy-unmatched FFF beam in previously published works.
本研究旨在确定6兆伏扁平光子束(6MV-FB)和更高能量的非扁平(7MV-FFF)治疗性光子束在不同尺寸方形射野的开放野和加修正滤过器情况下,在建成区的中心轴剂量和表面剂量。
这些射束由配备NACP-02电离室的西门子Artiste直线加速器产生,剂量通过使用GafChromic胶片以及两种不同的常用剂量仪进行测量:一种p型光子半导体剂量仪(PFD)和一个圆柱形电离室(CC13)。
结果表明,对于6MV-FB和7MV-FFF射束,开放野和楔形野的表面剂量均随射野尺寸(FS)线性增加。对于尺寸达10厘米×10厘米的射野,7MV-UFB射束的表面剂量与6MV-FB射束的一致,之后表面剂量降低。对于尺寸从5厘米×5厘米至15厘米×15厘米的射野,7MV-UFB射束的建成剂量略低于6MV-FB射束的。对于6MV-FB和7MV-FFF射束,无论测量中使用何种探测器,测得的表面剂量均随射野尺寸增加而明显增加。用PFD剂量仪以及NACP-02和CC13电离室测得的表面剂量与使用GafChromic胶片获得的结果有显著差异。与6MV-FB射束相比,7MV-FFF射束在建成区产生的表面剂量略小。
更高能量的7MV-FFF射束的表面剂量低于先前发表的作品中能量不匹配的FFF射束的表面剂量。